Abstract
Global warming and environmental pollution threaten aquatic ecosystems. While interactive effects between both stressors can have more than additive consequences, these remain poorly studied for most taxa. Especially chronic exposure trials with vertebrates are scarce due to the high time- and monetary costs of such studies. We use the recently-established fish model Nothobranchius furzeri to assess the separate and combined effects of exposure to the pesticide chlorpyrifos (at 2 µg/L and 4 µg/L) and a 2 °C temperature increase. We performed a full life-cycle assessment to evaluate fitness-related endpoints including survival, total body length, maturation time, fecundity, critical thermal maximum (CTmax) and locomotor activity. Exposure to 4 µg/L chlorpyrifos slowed down male maturation, reduced fecundity and impaired growth of the fish. While the temperature increase did not affect any of the measured endpoints on its own, the combination of exposure to 2 µg/L CPF with an increase of 2 °C reduced growth and severely reduced fecundity, with almost no offspring production. Together, these findings suggest that climate change may exacerbate the impact of environmental pollution, and that interactive effects of chronic exposure to multiple stressors should be considered to predict how populations will be affected by ongoing global change.
Original language | English |
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Article number | 114290 |
Journal | Ecotoxicology and Environmental Safety |
Volume | 248 |
DOIs | |
Publication status | Published - 15 Dec 2022 |
Externally published | Yes |
Keywords
- CTmax
- Ecotoxicology
- Freshwater
- Killifish
- Multiple stressors
- Pesticide
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University of Leuven (KU Leuven) Researchers Provide New Data on Global Warming and Climate Change (Combined effects of global warming and chlorpyrifos exposure on the annual fish Nothobranchius furzeri)
1/12/22
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